儿童脑脊液、血浆和尿液中存在多种新烟碱类。

Bernard Laubscher, Manuel Diezi, Raffaele Renella, Edward A D Mitchell, Alexandre Aebi, Matthieu Mulot, Gaëtan Glauser
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引用次数: 12

摘要

背景:新烟碱类杀虫剂(Neonicotinoids, NN)是一种选择性的神经毒性杀虫剂,可结合昆虫和哺乳动物的烟碱乙酰胆碱受体(nAChRs)。作为世界上使用最广泛的一类杀虫剂,它们在环境、野生动物和食物中无处不在,因此对环境和人类健康的影响受到特别关注。nachr对产前脑组织的正常组织至关重要,在各种运动、情绪和认知功能中发挥重要作用。人们对儿童被神经网络污染的情况知之甚少。在一项初步研究中,我们检验了儿童脑脊液(CSF)可能被神经网络污染的假设。方法:对接受治疗性腰椎穿刺治疗的白血病和淋巴瘤患儿的剩余脑脊液、血液和尿液样本进行神经网络分析。采用超高效液相色谱-串联质谱法对全球市场上批准的所有新烟碱及其一些最常见的代谢物进行了监测。结果:2020年8月至12月,14名儿童连续纳入研究。中位年龄为8岁(范围3-18岁)。所有脑脊液和血浆样本均至少有一种神经网络阳性。9份(64%)脑脊液样本和13份(93%)血浆样本含有一个以上神经网络。13份(93%)脑脊液样本含有乙酰氨脒的主要代谢物n -去甲基-乙酰氨脒(中位浓度0.0123,范围0.0024 ~ 0.1068 ng/mL)。除1例尿样外,其余尿样均≥1例NN阳性。血浆/尿液与脑脊液n -去甲基-乙酰脒浓度之间存在统计学上显著的线性关系。结论:我们开发了一种可靠的分析方法,可以在儿童脑脊液、血浆和尿液中发现多种神经网络和/或其代谢物。我们的数据表明,多个神经网络的污染不仅对蜜蜂等非目标昆虫造成环境危害,而且对儿童也可能造成危害。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Multiple neonicotinoids in children's cerebro-spinal fluid, plasma, and urine.

Multiple neonicotinoids in children's cerebro-spinal fluid, plasma, and urine.

Background: Neonicotinoids (NN) are selective neurotoxic pesticides that bind to insect but also mammal nicotinic acetycholine receptors (nAChRs). As the most widely used class of insecticides worldwide, they are ubiquitously found in the environment, wildlife, and foods, and thus of special concern for their impacts on the environment and human health. nAChRs are vital to proper brain organization during the prenatal period and play important roles in various motor, emotional, and cognitive functions. Little is known on children's contamination by NN. In a pilot study we tested the hypothesis that children's cerebro-spinal fluid (CSF) can be contaminated by NN.

Methods: NN were analysed in leftover CSF, blood, and urine samples from children treated for leukaemias and lymphomas and undergoing therapeutic lumbar punctions. We monitored all neonicotinoids approved on the global market and some of their most common metabolites by ultra-high performance liquid chromatography-tandem mass spectrometry.

Results: From August to December 2020, 14 children were consecutively included in the study. Median age was 8 years (range 3-18). All CSF and plasma samples were positive for at least one NN. Nine (64%) CSF samples and 13 (93%) plasma samples contained more than one NN. Thirteen (93%) CSF samples had N-desmethyl-acetamiprid (median concentration 0.0123, range 0.0024-0.1068 ng/mL), the major metabolite of acetamiprid. All but one urine samples were positive for ≥ one NN. A statistically significant linear relationship was found between plasma/urine and CSF N-desmethyl-acetamiprid concentrations.

Conclusions: We have developed a reliable analytical method that revealed multiple NN and/or their metabolites in children's CSF, plasma, and urine. Our data suggest that contamination by multiple NN is not only an environmental hazard for non-target insects such as bees but also potentially for children.

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